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Analysis of Gas Leakage and Current Loss of Solid Oxide Fuel Cells by Screen Printing

机译:丝网印刷分析固体氧化物燃料电池漏气和电流损失

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摘要

One of the biggest advantages of SOFC (solid oxide fuel cell) is the probable use of methane as fuel. However, when the actual SOFC stack is operating with CH as fuel, due to the catalytic action of metal nickel, carbon will deposit on SOFC anode and nickel foam, which directly shorten the SOFC operating life and lead to performance degradation. The planar anode-supported Ni-YSZ|YSZ|LSCF SOFC was chosen as the research object, with the cell size of 12cm×12cm and the effective area of 100cm, and the holder is made of 99% purity of AlO ceramic material, in order to eliminate the influence of Cr in stainless steel. The one-cell stack operated at 750℃, and the maximum power density was 0.35W/cm when the fuel is 0.5slm/min pure hydrogen. The stability experiment was conducted first under pure H for 100h, then fuel was switched into pure methane, and another 100h of voltage stability was tested. In this work, the temperature distribution of the stack was monitored, whose relationship with the weight gain and the micro-structure of the nickel foam was established, and a possible explanation of the carbon deposition distribution and process on the nickel foam was put forward.
机译:SOFC(固体氧化物燃料电池)的最大优势之一是可能使用甲烷作为燃料。但是,当实际的SOFC电池组使用CH作为燃料运行时,由于金属镍的催化作用,碳会沉积在SOFC阳极和泡沫镍上,这会直接缩短SOFC的使用寿命并导致性能下降。研究对象为平面阳极负载Ni-YSZ | YSZ | LSCF SOFC,其电池尺寸为12cm×12cm,有效面积为100cm,支架由纯度为99%的AlO陶瓷材料制成。为了消除铬对不锈钢的影响。单电池堆在750℃下运行,当燃料为0.5slm / min的纯氢时,最大功率密度为0.35W / cm。稳定性实验首先在纯H下进行100h,然后将燃料转换为纯甲烷,然后再测试100h的电压稳定性。在这项工作中,监测电池堆的温度分布,建立其与镍泡沫的重量增加和微观结构的关系,并提出可能解释镍泡沫上的碳沉积分布和过程的方法。

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